首页> 外文期刊>American Journal of Physiology >Sphingosine-1-phosphate receptor expression in cardiac fibroblasts is modulated by in vitro culture conditions.
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Sphingosine-1-phosphate receptor expression in cardiac fibroblasts is modulated by in vitro culture conditions.

机译:心脏成纤维细胞中鞘氨醇-1-磷酸受体的表达受体外培养条件的调节。

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摘要

The bioactive molecule sphingosine-1-phosphate (S1P) binds with high affinity to five recognized receptors (S1P(1-5)) to affect various tissues, including cellular responses of cardiac fibroblasts (CFbs) and myocytes. CFbs are essential components of myocardium, and detailed study of their cell signaling and physiology is required for a number of emerging disciplines. Meaningful studies on CFbs, however, necessitate methods for selective, reproducible cell isolations. Macrophages reside within normal cardiac tissues and often are isolated with CFbs. A protocol was therefore developed that significantly reduces macrophage levels and utilizes more CFb-specific markers (discoidin domain receptor-2) instead of, or in addition to, more commonly used cytoskeletal markers. Our results demonstrate that primary isolated, purified CFbs express predominantly S1P(1-3); however, the relative levels of these receptor subtypes are modulated with time and by culture conditions. In coculture experiments, macrophages altered CFb S1P receptor levels relative to controls. Further investigations using known macrophage-secreted factors showed that S1P and H(2)O(2) had minimal effects on CFb S1P(1-3) expression, whereas transforming growth factor-beta1, TNF-alpha, and PDGF-BB significantly altered all S1P receptor subtypes. Lowering FBS concentrations from 10% to 0.1% increased S1P(2), whereas supplementation with either PDGF-BB or Rho-associated protein kinase inhibitor Y-27632 significantly elevated S1P(3) levels. S1P(2) and S1P(3) receptor levels are known to regulate cell migration. Using cells isolated from either normal or S1P(3)-null mice, we demonstrate that S1P(3) is important and necessary for CFb migration. These results highlight the importance of demonstrating CFb culture purity in functional studies of S1P and also identify conditions that modulate S1P receptor expression in CFbs.
机译:生物活性分子-1-磷酸鞘氨醇(S1P)以高亲和力与五个公认的受体(S1P(1-5))结合,影响各种组织,包括心脏成纤维细胞(CFbs)和心肌细胞的细胞反应。 CFb是心肌的重要组成部分,许多新兴学科需要对其细胞信号传导和生理学进行详细研究。但是,对CFb进行有意义的研究需要选择选择性,可复制的细胞的方法。巨噬细胞位于正常的心脏组织内,通常与CFb隔离。因此,开发了一种协议,该协议可显着降低巨噬细胞水平,并使用更多的CFb特异性标志物(迪斯科汀域受体2)来代替或补充更常用的细胞骨架标志物。我们的结果表明,主要的分离,纯化的CFb主要表达S1P(1-3)。然而,这些受体亚型的相对水平随时间和培养条件而调节。在共培养实验中,巨噬细胞相对于对照改变了CFb S1P受体水平。使用已知的巨噬细胞分泌因子的进一步研究表明,S1P和H(2)O(2)对CFb S1P(1-3)的表达影响最小,而转化生长因子-beta1,TNF-alpha和PDGF-BB明显改变所有S1P受体亚型。将FBS浓度从10%降低到0.1%会增加S1P(2),而补充PDGF-BB或Rho相关蛋白激酶抑制剂Y-27632则显着提高S1P(3)水平。已知S1P(2)和S1P(3)受体水平可调节细胞迁移。使用从正常小鼠或S1P(3)-null小鼠中分离的细胞,我们证明S1P(3)对于CFb迁移非常重要和必要。这些结果强调了在S1P的功能研究中证明CFb培养物纯度的重要性,并且还确定了调节CFbs中S1P受体表达的条件。

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